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Life cycle primary energy use and carbon emission of an eight-storey wood-framed apartment building

机译:一栋八层木结构公寓楼的生命周期一次能源使用和碳排放

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In this study the life cycle primary energy use and carbon dioxide (CO_2) emission of an eight-storey wood-framed apartment building are analyzed. All life cycle phases are included, including acquisition and processing of materials, on-site construction, building operation, demolition and materials disposal. The calculated primary energy use includes the entire energy system chains, and carbon flows are tracked including fossil fuel emissions, process emissions, carbon stocks in building materials, and avoided fossil emissions due to biofuel substitution. The results show that building operation uses the largest share of life cycle energy use. becoming increasingly dominant as the life span of the building increases. The type of heating system strongly influences the primary energy use and CO_2 emission; a biomass-based system with cogeneration of district heat and electricity achieves low primary energy use and very low CO_2 emissions. Using biomass residues from the wood products chain to substitute for fossil fuels significantly reduces net CO_2 emission. Excluding household tap water and electricity, a negative life cycle net CO_2 emission can be achieved due to the wood-based construction materials and biomass-based energy supply system. This study shows the importance of using a life cycle perspective when evaluating primary energy and climatic impacts of buildings.
机译:在这项研究中,分析了八层木结构公寓楼的生命周期主要能源消耗和二氧化碳(CO_2)排放。包括所有生命周期阶段,包括材料的获取和处理,现场施工,建筑物运营,拆除和材料处置。计算出的一次能源使用包括整个能源系统链,并跟踪碳流量,包括化石燃料排放,过程排放,建筑材料中的碳储量以及由于生物燃料替代而避免的化石排放。结果表明,建筑物运营使用了生命周期能耗中的最大份额。随着建筑物使用寿命的延长,它变得越来越重要。加热系统的类型强烈影响一次能源的使用和CO_2的排放。基于生物质的热电联产系统可降低一次能源使用量和非常低的CO_2排放量。使用木材产品链中的生物质残余物替代化石燃料可显着减少净CO_2排放量。如果不使用家庭自来水和电力,由于使用木质建筑材料和生物质能源供应系统,可以实现负生命周期净CO_2排放。这项研究表明,在评估建筑物的一次能源和气候影响时,应使用生命周期视角。

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